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    • 78. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE, AND METHOD FOR PRODUCING SAME
    • 液晶显示装置及其制造方法
    • US20120327319A1
    • 2012-12-27
    • US13582815
    • 2011-01-19
    • Toshiki SaitohKenji Ikeda
    • Toshiki SaitohKenji Ikeda
    • G02F1/133H05K13/00
    • G02F1/1345G02F2202/16Y10T29/49002
    • Provided is a high-quality liquid crystal display device in which an electronic component and a flexible printed circuit board are simultaneously mounted onto a liquid crystal panel and the electronic component and the like are prevented from corroding. The liquid crystal display device is provided with a liquid crystal display panel (10), at least one electronic component (40) mounted on the liquid crystal display panel in a peripheral portion, and a flexible printed circuit board (50) disposed in the outer circumferential portion of the electronic component in the peripheral edge portion of the liquid crystal display panel. An anisotropic conductive resin (70), which is formed by dispersing and mixing conductive particles (75) in an insulating resin, is integrally disposed on a region that at least covers a mounting area of the electronic component to a mounting area of the flexible printed circuit board in the outer edge portion of the liquid crystal display panel. The electronic component and the flexible printed circuit board are electrically connected to the liquid crystal display panel, respectively, with the anisotropic conductive resin therebetween. The side surface section in the periphery of the electronic component is covered with the anisotropic conductive resin.
    • 本发明提供一种高品质的液晶显示装置,其中电子部件和柔性印刷电路板同时安装在液晶面板上,防止了电子部件等的腐蚀。 液晶显示装置设置有液晶显示面板(10),安装在周边部分的液晶显示面板上的至少一个电子部件(40)和设置在外部的柔性印刷电路板(50) 在液晶显示面板的周边部分中的电子部件的圆周部分。 通过将导电粒子(75)分散并混合在绝缘树脂中形成的各向异性导电树脂(70)整体地设置在至少覆盖电子部件的安装区域的区域上,该柔性印刷 电路板在液晶显示面板的外缘部分。 电子部件和柔性印刷电路板分别与各向异性导电树脂电连接到液晶显示面板。 电子部件周边的侧面部分被各向异性导电树脂覆盖。
    • 79. 发明申请
    • GAS-LIQUID SEPARATOR AND MULTIPHASE FLOW RATE MEASUREMENT DEVICE
    • 气液分离器和多相流量测量装置
    • US20120297986A1
    • 2012-11-29
    • US13575846
    • 2011-03-07
    • Tomoko SudaMichihiro KawaiKenji Ikeda
    • Tomoko SudaMichihiro KawaiKenji Ikeda
    • B01D19/00
    • B01D19/0057B01D19/0063B01D45/12B04C5/103B04C5/13G01F15/08
    • A gas-liquid separator (1) is configured so that the inner side surface of a body section (13) and the outer side surface of an inner pipe (50) are concentric when viewed from above, an inlet pipe (20) extending toward the center axis of the body section (13) when viewed from above, a guide plate (60) including a guide plate side section (61) that extends in a non-horizontal direction, and a guide plate lower section (62) that extends in a non-vertical direction and is continuous with the guide plate side section (61), the guide plate side section (61) being at least disposed on the inner side surface of the body section (13) at a position on one side of an inlet opening (132), or on the outer side surface of the inner pipe (50) at a position on one side of an area opposite to the inlet opening (132), the guide plate lower section (62) being at least disposed on the outer side surface of the inner pipe (50) at a position directly under an area opposite to the inlet opening (132) and along the outer side surface of the inner pipe (50) when viewed from above, and a space (100) being at least partially formed between the guide plate lower section (62) and the body section (13).
    • 气液分离器(1)被构造为使得当从上方观察时,主体部分(13)的内侧表面和内管(50)的外侧表面是同心的,入口管(20)朝向 当从上方观察时,主体部分(13)的中心轴线,包括在非水平方向上延伸的导向板侧部分(61)的引导板(60)和延伸的导向板下部(62) 在非垂直方向上与引导板侧部分(61)连续,引导板侧部分(61)至少设置在主体部分(13)的内侧表面上,位于主体部分 入口开口(132),或者在与所述入口(132)相对的区域的一侧上的位置处,在所述内管(50)的外侧表面上,所述引导板下部(62)至少设置 在直接位于与入口开口(132)和a1相反的区域的位置处的内管(50)的外侧表面上 在从上方观察时,内管50的外侧表面和至少部分地形成在导板下部62与主体部13之间的空间100。
    • 80. 发明授权
    • Valve timing control apparatus
    • 气门正时控制装置
    • US08141529B2
    • 2012-03-27
    • US13141635
    • 2010-02-16
    • Kenji Ikeda
    • Kenji Ikeda
    • F01L1/34
    • F01L1/3442F01L2001/34426F01L2001/34469F01L2001/34476F01L2001/34479F01L2250/02
    • A valve timing control apparatus includes a locking mechanism having a locking member disposed in an accommodating portion formed in one of a drive-side rotor and a driven-side rotor and projectable into and retractable from the other rotor than the one rotor having the accommodating portion and a locking groove defined in the other rotor for receiving and retaining the locking member projecting therein, the locking mechanism for restraining a relative rotational phase when the locking member is retained within the locking groove. The apparatus further includes a restricting mechanism having a restricting member disposed within the accommodating portion and projectable into and retractable from the other rotor to be movable relative to and together with the locking member in a projecting/retracting direction of the locking member and a restricting groove defined in the form of an elongate slot in the other rotor for receiving the restricting member projecting therein, the restricting mechanism restricting the relative rotational phase within a predetermined range when the restricting member projects into the restricting groove.
    • 一种气门正时控制装置,包括锁定机构,该锁定机构具有设置在形成于驱动侧转子和从动侧转子中的一个中的容纳部分中的锁定部件,并且能够相对于具有容纳部 以及限定在另一个转子中的锁定槽,用于接收和保持突出在其中的锁定构件,所述锁定机构用于当锁定构件保持在锁定槽内时限制相对旋转相位。 该装置还包括限制构件,其具有限制构件,该限制构件设置在容纳部分内并且能够从另一个转子伸出并可从另一个转子缩回,以便能够相对于锁定构件在锁定构件的伸出/缩回方向上可移动并与锁定构件一起移动, 在另一个转子中以细长槽的形式限定,用于接收在其中突出的限制构件,限制机构在限制构件伸入限制槽时限制相对旋转相位在预定范围内。